Faculty of Pharmacy, Tehran University of Medical Science, Postal Code: 1417653761, Tehran, Iran.
Drug Deliv. 2011 Nov;18(8):570-7. doi: 10.3109/10717544.2011.600782. Epub 2011 Sep 5.
High costs of production and relatively short serum half-life of mammalian cell-derived recombinant human erythropoietin (rHuEpo) necessitate finding and developing superior hosts/technologies for more efficient production of longer-acting erythropoietic agents. With these aims, we provide the first report on reductive alkylation of low-cost P.pastoris-expressed rHuEpo (PPEpo) with PEG-aldehyde. The PCR-amplified cDNA of native rHuEpo was cloned into the pPICZαA vector and transformed into the yeast Pichia pastoris. The best expressing transformant was selected and employed for secreted-expression of PPEpo using the standard protocols. Purified PPEpo was N-terminally PEGylated with 20-kDa mPEG-propionaldehyde in a low pH (5) condition. The in vitro and in vivo biological activities of purified mono-PEGylated PPEpo was evaluated by the UT-7 cells proliferation assay and normocythaemic mice assay, respectively. Pharmacokinetic parameters were determined following intravenous administration of Epo proteins in rabbits. While PPEpo showed a higher in vitro bioactivity compared to rHuEpo, no in vivo efficiency was determined for PPEpo. However, the in vivo activity of PEG-PPEpo conjugate was comparable to that of rHuEpo. Pharmacokinetic studies showed that the terminal half-life and mean residence time of PEG-PPEpo were increased approximately 4-fold and 6.5-fold respectively, compared with those of PPEpo. The results indicate that N-terminal PEGylation of Pichia-expressed Epo could be considered as a promising approach for generating cost-effective and long-acting erythropoiesis-stimulating agents.
高生产成本和哺乳动物细胞来源的重组人红细胞生成素(rHuEpo)相对较短的血清半衰期,需要寻找和开发更优越的宿主/技术,以更有效地生产更长效的红细胞生成剂。基于这些目标,我们首次报道了用聚乙二醇醛对低成本毕赤酵母表达的 rHuEpo(PPEpo)进行还原烷基化。天然 rHuEpo 的 PCR 扩增 cDNA 被克隆到 pPICZαA 载体中,并转化到酵母毕赤巴斯德氏菌中。选择最佳表达转化子,并按照标准方案用于 PPEpo 的分泌表达。用 20kDa 的 mPEG-丙醛在低 pH(5)条件下对纯化的 PPEpo 进行 N 端聚乙二醇化。通过 UT-7 细胞增殖测定和正常红细胞小鼠测定分别评估了纯化的单聚乙二醇化 PPEpo 的体外和体内生物活性。在兔体内静脉给予 Epo 蛋白后,测定药代动力学参数。虽然 PPEpo 的体外生物活性高于 rHuEpo,但未确定 PPEpo 的体内效率。然而,PEG-PPEpo 缀合物的体内活性与 rHuEpo 相当。药代动力学研究表明,与 PPEpo 相比,PEG-PPEpo 的末端半衰期和平均停留时间分别增加了约 4 倍和 6.5 倍。结果表明,毕赤酵母表达的 Epo 的 N 端聚乙二醇化可被视为一种有前途的方法,可用于产生具有成本效益和长效的红细胞生成刺激剂。